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首页> 外文期刊>Biochemical Pharmacology >Antileishmanial activity of verbascoside: Selective arginase inhibition of intracellular amastigotes of Leishmania (Leishmania) amazonensis with resistance induced by LPS plus IFN-gamma
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Antileishmanial activity of verbascoside: Selective arginase inhibition of intracellular amastigotes of Leishmania (Leishmania) amazonensis with resistance induced by LPS plus IFN-gamma

机译:术术的肺病术症:LESHMANIA(Leishmania)亚麻细胞内Amastigotes的选择性氨基酶抑制,LPS Plus IFN-Gamma诱导的抗性

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Verbascoside is the main component of the traditional medicinal plants that were used against protozoa parasites that cause malaria and leishmaniasis. Previously, we have described verbascoside inhibition of Leishmania amazonensis arginase as well as its antileishmanial action against extracellular promastigotes. In this study, we have assessed arginase parasite inhibition in intracellular amastigotes. In addition, we verified whether verbascoside can influence the host defense against the parasite by measuring gene expression of cytokines IL-1b, IL-10, IL-18, TNF-alpha, and murine macrophage arginase as well as nitric oxide synthase enzymes. Our results show that verbascoside acts on intracellular amastigotes of L. amazonensis (EC50 = 32 mu M) by selectively inhibiting the parasite arginase. Verbascoside did not affect the expression of cytokines or enzymes by murine macrophages. However, verbascoside was active against L. (L) amazonensis amastigotes that were resistant to treatment with LPS and IFN-gamma. Verbascoside action on L. amazonensis can be associated with reduction of the protective oxidative mechanism of the parasite leading to impaired trypanothione synthesis that is induced by the parasite arginase inhibition. (C) 2016 Published by Elsevier Inc.
机译:血管内酯是传统药用植物的主要成分,用于针对导致疟疾和莱山西亚病的原生动物寄生虫。以前,我们描述了对嗜血管症亚马逊毒素酶的膀胱糖苷抑制以及对细胞外突起的抗恋的行为。在这项研究中,我们已经评估了在细胞内的Amastigots中的氨基酶寄生虫抑制。此外,我们通过测量细胞因子IL-1B,IL-10,IL-18,TNF-α和鼠巨噬细胞酶以及一氧化氮合酶酶以及一氧化氮合酶酶,验证血管内酯是否可以影响寄生虫对寄生虫对寄生虫的影响。我们的研究结果表明,通过选择性地抑制寄生虫氨基酶,血管内酯对L.AveRonensis(EC50 =32μm)的细胞内amastigotes作用于L.Amazonensis(EC50 =32μm)。血管内酯没有影响小鼠巨噬细胞的细胞因子或酶的表达。然而,术术反对L.(L)亚马逊的Amakensis Amastigotes,其与LPS和IFN-Gamma进行耐药。血管素作用于L.Amazonensis可以与寄生虫的保护性氧化机制的降低有关,导致寄生虫酶抑制诱导的促蛋白石合成受损。 (c)2016年由elsevier公司发布

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